Dynamics of cough frequency in adults undergoing treatment for pulmonary tuberculosis
- Alvaro Proaño(corresponding author),
- Marjory A. Bravard,
- ,
- Gwenyth O. Lee,
- David Bui,
- Sumona Datta
- Universidad Peruana Cayetano Heredia, Facultad de Medicina Alberto Hurtado,
- Universidad Peruana Cayetano Heredia,
- Asociación Benéfica PRISMA,
- Laboratory of Research and Development,
- Massachusetts General Hospital,
Open access
Publication Information
Output type
Original language
EnglishPages from-to (Number of pages)
Pages 1174-1181 (8 pages)Journal (Volume, Issue Number)
Clinical Infectious Diseases (Volume 64, Issue 9)Publication milestones
- Published - 01/05/2017
Publication status
ISSN
1058-4838Publication IDs
- Scopus: 85020044072
- PubMed: 28329268
Abstract
Background. Cough is the major determinant of tuberculosis transmission. Despite this, there is a paucity of information regarding characteristics of cough frequency throughout the day and in response to tuberculosis therapy. Here we evaluate the circadian cycle of cough, cough frequency risk factors, and the impact of appropriate treatment on cough and bacillary load. Methods. We prospectively evaluated human immunodeficiency virus-negative adults (n = 64) with a new diagnosis of culture- proven, drug-susceptible pulmonary tuberculosis immediately prior to treatment and repeatedly until treatment day 62. At each time point, participant cough was recorded (n = 670) and analyzed using the Cayetano Cough Monitor. Consecutive coughs at least 2 seconds apart were counted as separate cough episodes. Sputum samples (n = 426) were tested with microscopic-observation drug susceptibility broth culture, and in culture-positive samples (n = 252), the time to culture positivity was used to estimate bacillary load. Results. The highest cough frequency occurred from 1 pm to 2 pm, and the lowest from 1 am to 2 am (2.4 vs 1.1 cough episodes/ hour, respectively). Cough frequency was higher among participants who had higher sputum bacillary load (P < .01). Pretreatment median cough episodes/hour was 2.3 (interquartile range [IQR], 1.2-4.1), which at 14 treatment days decreased to 0.48 (IQR, 0.0- 1.4) and at the end of the study decreased to 0.18 (IQR, 0.0-0.59) (both reductions P < .001). By 14 treatment days, the probability of culture conversion was 29% (95% confidence interval, 19%-41%). Conclusions. Coughs were most frequent during daytime. Two weeks of appropriate treatment significantly reduced cough frequency and resulted in one-third of participants achieving culture conversion. Thus, treatment by 2 weeks considerably diminishes, but does not eliminate, the potential for airborne tuberculosis transmission.
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